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https://gitee.com/openharmony/third_party_ffmpeg
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swresample/aarch64: add ff_resample_common_apply_filter_{x4,x8}_{float,s16}_neon
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@ -1,5 +1,7 @@
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OBJS += aarch64/audio_convert_init.o
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OBJS += aarch64/audio_convert_init.o \
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aarch64/resample_init.o
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OBJS-$(CONFIG_NEON_CLOBBER_TEST) += aarch64/neontest.o
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NEON-OBJS += aarch64/audio_convert_neon.o
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NEON-OBJS += aarch64/audio_convert_neon.o \
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aarch64/resample.o
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76
libswresample/aarch64/resample.S
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76
libswresample/aarch64/resample.S
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/*
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* Copyright (c) 2017 Matthieu Bouron <matthieu.bouron gmail.com>
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*
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "libavutil/aarch64/asm.S"
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function ff_resample_common_apply_filter_x4_float_neon, export=1
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movi v0.4S, #0 // accumulator
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1: ld1 {v1.4S}, [x1], #16 // src[0..3]
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ld1 {v2.4S}, [x2], #16 // filter[0..3]
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fmla v0.4S, v1.4S, v2.4S // accumulator += src[0..3] * filter[0..3]
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subs w3, w3, #4 // filter_length -= 4
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b.gt 1b // loop until filter_length
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faddp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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faddp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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st1 {v0.S}[0], [x0], #4 // write accumulator
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ret
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endfunc
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function ff_resample_common_apply_filter_x8_float_neon, export=1
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movi v0.4S, #0 // accumulator
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1: ld1 {v1.4S}, [x1], #16 // src[0..3]
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ld1 {v2.4S}, [x2], #16 // filter[0..3]
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ld1 {v3.4S}, [x1], #16 // src[4..7]
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ld1 {v4.4S}, [x2], #16 // filter[4..7]
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fmla v0.4S, v1.4S, v2.4S // accumulator += src[0..3] * filter[0..3]
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fmla v0.4S, v3.4S, v4.4S // accumulator += src[4..7] * filter[4..7]
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subs w3, w3, #8 // filter_length -= 8
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b.gt 1b // loop until filter_length
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faddp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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faddp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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st1 {v0.S}[0], [x0], #4 // write accumulator
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endfunc
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function ff_resample_common_apply_filter_x4_s16_neon, export=1
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movi v0.4S, #0 // accumulator
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1: ld1 {v1.4H}, [x1], #8 // src[0..3]
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ld1 {v2.4H}, [x2], #8 // filter[0..3]
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smlal v0.4S, v1.4H, v2.4H // accumulator += src[0..3] * filter[0..3]
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subs w3, w3, #4 // filter_length -= 4
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b.gt 1b // loop until filter_length
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addp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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addp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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st1 {v0.S}[0], [x0], #4 // write accumulator
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ret
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endfunc
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function ff_resample_common_apply_filter_x8_s16_neon, export=1
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movi v0.4S, #0 // accumulator
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1: ld1 {v1.8H}, [x1], #16 // src[0..7]
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ld1 {v2.8H}, [x2], #16 // filter[0..7]
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smlal v0.4S, v1.4H, v2.4H // accumulator += src[0..3] * filter[0..3]
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smlal2 v0.4S, v1.8H, v2.8H // accumulator += src[4..7] * filter[4..7]
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subs w3, w3, #8 // filter_length -= 8
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b.gt 1b // loop until filter_length
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addp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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addp v0.4S, v0.4S, v0.4S // pair adding of the 4x32-bit accumulated values
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st1 {v0.S}[0], [x0], #4 // write accumulator
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ret
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endfunc
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120
libswresample/aarch64/resample_init.c
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120
libswresample/aarch64/resample_init.c
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@ -0,0 +1,120 @@
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/*
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* Audio resampling
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*
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* Copyright (c) 2004-2012 Michael Niedermayer <michaelni@gmx.at>
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*
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* This file is part of FFmpeg.
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*
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* FFmpeg is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* FFmpeg is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with FFmpeg; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "config.h"
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#include "libavutil/cpu.h"
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#include "libavutil/avassert.h"
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#include "libavutil/aarch64/cpu.h"
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#include "libswresample/resample.h"
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#define DECLARE_RESAMPLE_COMMON_TEMPLATE(TYPE, DELEM, FELEM, FELEM2, OUT) \
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\
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void ff_resample_common_apply_filter_x4_##TYPE##_neon(FELEM2 *acc, const DELEM *src, \
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const FELEM *filter, int length); \
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\
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void ff_resample_common_apply_filter_x8_##TYPE##_neon(FELEM2 *acc, const DELEM *src, \
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const FELEM *filter, int length); \
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\
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static int ff_resample_common_##TYPE##_neon(ResampleContext *c, void *dest, const void *source, \
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int n, int update_ctx) \
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{ \
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DELEM *dst = dest; \
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const DELEM *src = source; \
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int dst_index; \
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int index = c->index; \
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int frac = c->frac; \
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int sample_index = 0; \
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int x4_aligned_filter_length = c->filter_length & ~3; \
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int x8_aligned_filter_length = c->filter_length & ~7; \
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\
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while (index >= c->phase_count) { \
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sample_index++; \
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index -= c->phase_count; \
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} \
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\
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for (dst_index = 0; dst_index < n; dst_index++) { \
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FELEM *filter = ((FELEM *) c->filter_bank) + c->filter_alloc * index; \
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\
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FELEM2 val = 0; \
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int i = 0; \
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if (x8_aligned_filter_length >= 8) { \
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ff_resample_common_apply_filter_x8_##TYPE##_neon(&val, &src[sample_index], \
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filter, x8_aligned_filter_length); \
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i += x8_aligned_filter_length; \
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\
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} else if (x4_aligned_filter_length >= 4) { \
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ff_resample_common_apply_filter_x4_##TYPE##_neon(&val, &src[sample_index], \
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filter, x4_aligned_filter_length); \
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i += x4_aligned_filter_length; \
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} \
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for (; i < c->filter_length; i++) { \
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val += src[sample_index + i] * (FELEM2)filter[i]; \
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} \
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OUT(dst[dst_index], val); \
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\
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frac += c->dst_incr_mod; \
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index += c->dst_incr_div; \
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if (frac >= c->src_incr) { \
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frac -= c->src_incr; \
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index++; \
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} \
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\
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while (index >= c->phase_count) { \
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sample_index++; \
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index -= c->phase_count; \
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} \
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} \
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\
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if (update_ctx) { \
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c->frac = frac; \
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c->index = index; \
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} \
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\
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return sample_index; \
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} \
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#define OUT(d, v) d = v
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DECLARE_RESAMPLE_COMMON_TEMPLATE(float, float, float, float, OUT)
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#undef OUT
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#define OUT(d, v) (v) = ((v) + (1<<(14)))>>15; (d) = av_clip_int16(v)
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DECLARE_RESAMPLE_COMMON_TEMPLATE(s16, int16_t, int16_t, int32_t, OUT)
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#undef OUT
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av_cold void swri_resample_dsp_aarch64_init(ResampleContext *c)
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{
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int cpu_flags = av_get_cpu_flags();
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if (!have_neon(cpu_flags))
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return;
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switch(c->format) {
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case AV_SAMPLE_FMT_FLTP:
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c->dsp.resample_common = ff_resample_common_float_neon;
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break;
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case AV_SAMPLE_FMT_S16P:
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c->dsp.resample_common = ff_resample_common_s16_neon;
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break;
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}
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}
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@ -63,5 +63,6 @@ typedef struct ResampleContext {
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void swri_resample_dsp_init(ResampleContext *c);
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void swri_resample_dsp_x86_init(ResampleContext *c);
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void swri_resample_dsp_arm_init(ResampleContext *c);
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void swri_resample_dsp_aarch64_init(ResampleContext *c);
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#endif /* SWRESAMPLE_RESAMPLE_H */
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@ -70,4 +70,5 @@ void swri_resample_dsp_init(ResampleContext *c)
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if (ARCH_X86) swri_resample_dsp_x86_init(c);
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else if (ARCH_ARM) swri_resample_dsp_arm_init(c);
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else if (ARCH_AARCH64) swri_resample_dsp_aarch64_init(c);
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}
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